首页> 外文期刊>Journal of Neuroscience Methods >A bundled microwire array for long-term chronic single-unit recording in deep brain regions of behaving rats.
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A bundled microwire array for long-term chronic single-unit recording in deep brain regions of behaving rats.

机译:捆绑的微线阵列,用于在行为大鼠的深部大脑区域进行长期慢性单单位记录。

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摘要

Chronic single-unit recording in subcortical brain regions is increasingly important in neurophysiological studies. However, methods for long-term, stable recording of multiple single-units in deep brain regions and in dura-surrounded ganglion have not yet been established. In the present study, we propose a bundled microwire array design which is capable of long-term recording of the trigeminal ganglion and deep-brain units. This electrode set is easy to construct from common materials and tools found in an electrophysiological laboratory. The salient features of our design include: (1) short and separated tungsten microwires for stable chronic recording; (2) the use of a 30-guage stainless steel guide tube for facilitating penetration and aiming for deep targets as well as electrical grounding; (3) the inclusion of a reference of the same microwire material inside the bundle to enhance common mode rejection of far field noises; and (4) an adjustable connector. In our case, we used a 90 degrees backward bending connector so that implanted rats could perform the same hole-seeking behavior and their faces and the whiskers could be stimulated in the behaving state. It was demonstrated that this multi-channel electrode caused minimal tissue damage at the recording site and we were able to obtain good, stable single-unit recordings from the trigeminal ganglion and ventroposterior medial thalamus areas of freely moving rats for up to 80 days. This methodology is useful for the studies that require long term and high quality unit recording in the deep brain or in the trigeminal system.
机译:在神经生理学研究中,皮层下大脑区域的慢性单单位记录越来越重要。但是,尚未建立用于在大脑深部区域和硬脑膜周围神经节中长期稳定记录多个单个单元的方法。在本研究中,我们提出了一种捆绑的微丝阵列设计,该设计能够长期记录三叉神经节和深脑单位。该电极组易于用电生理实验室中的常用材料和工具来构造。我们设计的显着特征包括:(1)短而分开的钨微丝,用于稳定的长期记录; (2)使用30规格的不锈钢导管以促进穿透力并瞄准较深的目标以及电气接地; (3)在束中包含相同的微丝材料参考,以增强对远场噪声的共模抑制; (4)可调接头。在我们的案例中,我们使用了90度向后弯曲的连接器,以便植入的老鼠可以执行相同的寻孔行为,并且在行为状态下可以刺激其面部和胡须。事实证明,这种多通道电极在记录部位造成的组织损伤最小,而且我们能够从自由运动大鼠的三叉神经节和腹后内侧丘脑区域获得长达80天的良好,稳定的单单位记录。这种方法对于需要在大脑深部或三叉神经系统中进行长期高质量记录的研究很有用。

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